一 课题组简介
bv伟德国际1946多孔材料合成及应用课题组现有教授3人,讲师2人,其中硕士生导师4人。
课题组主要研究方向包括:1、多孔材料合成;2、燃料油清洁化;3、润滑油添加剂;4、多孔材料在土壤修复中的应用;5、化工过程控制;6、纳米催化剂的制备及其应用。
课题组先后承担了各种科研项目19项,其中纵向课题17项(国家级2项,省部级15项),横向课题6项(横向课题总额145.5万)。共发表学术论文200余篇(其中SCI检索60余篇,EI检索26篇,中文核心27篇),获批实用新型专利5项。
在各项目的实施过程中,课题组与渤海大学、辽宁石油化工大学、陕西省延长石油集团西北化工研究院、陕西省延长石油集团、锦州康泰润滑油添加剂有限公司、辽宁渤大化工有限公司等高校、科研单位及多家企业保持着密切的科研和技术合作。
热忱欢迎优秀的本科生和研究生来课题组学习深造,也欢迎海内外多孔材料合成及应用以及课题组其他相关领域的企业、科研机构及专家、学者来课题组访问与交流!
二、课题组带头人简介
唐 克,男,教授,博士,硕士生导师。毕业于兰州大学化学伟德国际victor1946分析化学专业。国家自然基金委项目评审专家,辽宁省、河北省、湖北省科技奖励评审专家,辽宁省应急管理专家,《fuel》、《energy and fuels》、《fuel process technology》等知名学术期刊审稿专家,
主要研究方向:多孔材料合成及其应用、燃料清洁化及润滑油添加剂生产。
主持完成辽宁省自然科学基金项目2项(项目编号:2014020113,20180550639),辽宁省高等公司优秀人才支持计划项目1项(项目编号:LJQ2012.57),辽宁省教育厅科研项目2项(项目编号:2008313;JYTMS20230835);主持横向科研项目三项(合同总金额:38 万元);参与国家自然基金项目及省部级项目十余项。
近年获得的主要科研奖励如下:2017年度辽宁省自然科学学术成果三等奖;2013年度锦州市优秀科技工作者;入选2012年辽宁省高等公司优秀人才支持计划;2011年度锦州市自然科学学术成果一等奖。
近年来在国内外学术期刊上发表学术论文100余篇(其中SCI收录16篇;EI收录13篇;核心19篇),其中第一作者发表的学术论文被引用共计200余次,获授权实用新型专利2项。
三、课题组成员简介
洪 新:女,bv伟德国际1946教授,硕士研究生导师,毕业于辽宁石油化工大学,《bv伟德国际1946学报》编委。主要研究方向为燃料清洁化及润滑油添加剂。
主持辽宁省自然科学基金项目1项(项目编号:2019-ZD-0699),主持辽宁省重点研发计划项目1项、横向课题2项(总金额:56.5万),主持辽宁省教育厅项目1项(项目编号:JYTMS20230852),主持bv伟德国际1946教师科研启动基金项目1项;作为执行负责人参加辽宁省自然科学基金1项、辽宁省教育厅基金项目1项的科研工作、参与横向科研项目2项;
目前为止,获授权实用新型专利2项,共发表学术论文60余篇(其中SCI收录16篇;EI收录18篇;中文核心20篇),以第一作者发表论文40余篇(其中SCI收录5篇;EI收录9篇;中文核心11篇)。
李东娟:女,毕业于大连工业大学,教授,硕士研究生导师。主要从事于化工过程控制的研究。已在国内外学术期刊上发表SCI论文等学术论文20余篇,主持国家自然科学基金面上项目1项,项目编号:62473184;主持国家自然科学基金青年基金1项,项目编号:61603164。参与国家自然科学基金项目多项,主持省部级项目3项。
郑 跃:男,辽宁锦州人,毕业于四川大学,物理化学专业,博士。主持辽宁省科技厅项目1项(项目编号:2019-ZD-0695);主持辽宁省教育厅项目1项(项目编号:JYTMS20230853);
研究方向:
(1)清洁能源、绿色化学反应动力学研究;(2)高分子有机污染物降解过程中的构型变化,多相催化剂的选择,对其降解机理影响的研究;(3)生物分子构型变化,对催化反应,蛋白质解旋反应的影响,及相关机理研究。
王 鹏:男,博士,毕业于兰州大学,2018年由陕西省延长石油集团西北化工研究院调入bv伟德国际1946工作,长期从事纳米催化剂的制备及其应用方面的研究工作,共发表相关学术论文10余篇,在陕西省延长石油集团西北化工研究院工作期间主持的乙醇脱氢氨化制乙腈关键技术开发(YC-CH-J(16)05)项目(100万元)成果已工业化,为多家企业带来了较大的经济效益。
四、课题组代表性学术论文(按发表时间倒序排列)
[1] 秦悦,唐克*,王涵,房欣,沈硕,洪新. MOFs 材料 MIL-101(Cr)的制备及其吸附脱氮性能研究[J/OL].燃料化学学报(中英文). 2025, 53(6): 943-953. (EI).
[2] 王聚财,王涵,唐克,孙潇镝,富添,洪新.氧化石墨烯吸附吡啶的密度泛函理论[J/OL].石油学报(石油加工). https://link.cnki.net/urlid/11.2129.TE.20250212.1433.005 (EI).
[3] Dong-Juan Li, Yi-Fan Yan, and Dapeng Li*, “Adaptive event-triggered control for wastewater treatment process using self-organizing fuzzy neural network,” IEEE Transactions on Automation Science and Engineering, vol. 22, pp. 11333-11342, 2025. (2区)
[4] 田宇,洪新*,唐克. 改性NaY分子筛吸附脱除模拟燃油中喹啉的理论研究. 燃料化学学报. 2025, 53(5): 742-757. (EI).
[5] 王涵,唐克*,洪新,房欣,秦悦,沈硕,李东娟. 两种形貌纳米Co3O4的表征及其对喹啉的吸附性能. 石油学报(石油加工). 2025, 41(2): 466-476. (EI).
[6] 王聚财,唐克*,孙潇镝,洪新.吡啶在 Ti、 Zr、 N 掺杂石墨烯表面吸附的理论研究[J/OL].燃料化学学报(中英文). 2024, 52(8): 1162-1172. (EI).
[7] 富添,洪新*,田宇,孙潇镝,王聚财,唐克,栾秀阳.Ag+改性NaY分子筛的制备及其吸附脱氮性能研究. 燃料化学学报,2024, 52(3): 385-394. (EI).
[8] Dongjuan Li, Yaning Wang, Yan-Jun Liu, and Lei Liu*, “IBLFs-based adaptive fuzzy control for continuous stirred tank reactors with full state constraints and actuator faults,” Journal of Process Control, vol. 124, pp. 14-24, Apr. 2023. (SCI).
[9] Dongjuan Li, Dongxing Wang, and Ying Gao*, “Adaptive neural control and modeling for continuous stirred tank reactor with delays and full state constraints,” Complexity, vol. 2021, Article ID 9948044, 12 pages, 2021. (SCI).
[10] Dongjuan Li, Dongxing Wang, Lei Liu*, and Ying Gao, “Adaptive finite-time tracking control for continuous stirred tank reactor with time-varying output constraint,” IEEE Transactions on Systems, Man, and Cybernetics: Systems, vol. 51, no. 9, pp. 5929-5934, Sep. 2021. (SCI). (1区)
[11] Dongjuan Li, Shu-Ming Lu, and Lei Liu*, “Adaptive NN cross backstepping control for nonlinear systems with partial time-varying state constraints and its applications to hyper-chaotic systems,” IEEE Transactions on Systems, Man, and Cybernetics: Systems, vol. 51, no. 5, pp. 2821-2832, May 2021. (SCI). (1区)
[12] Y. Zheng and J. J. Xu. Kinetic properties of bio-molecules by different noises in the two-dimensional free-energy model. AIP Advances 11, 025318 (2021). (SCI).
[13] Y. Zheng, R. B. Ren and J.J. Xu, Dynamic disorder characteristics of single-molecule pulling experiments on two-dimensional free-energy landscape. Phys. Lett. A 382, 1791–179 (2018). (SCI).
[14] 李云赫,洪新*,高畅,牛晓青,唐克. 杂原子介孔分子筛MCM-41的制备及其对含喹啉模拟柴油吸附脱氮性能研究, 燃料化学学报,2019, 47(10): 1195-1203. (EI).
[15] Dong-Juan Li * and Da-Peng Li, “Adaptive control via neural output feedback for a class of nonlinear discrete-time systems in a nested interconnected form,” IEEE Transactions on Cybernetics, vol. 48, no. 9, pp. 2633-2642, Sep. 2018. (SCI). (1区)
[16] Dong-Juan Li, Shu-Min Lu, Yan-Jun Liu*, and Da-Peng Li, “Adaptive fuzzy tracking control based barrier functions of uncertain nonlinear MIMO systems with full-state constraints and applications to chemical process,” IEEE Transactions on Fuzzy Systems, vol. 26, no. 4, pp. 2145-2159, Aug. 2018. (SCI). (1区)
[17] Dongjuan Li and Dapeng Li*, “Adaptive tracking control for nonlinear time-varying delay systems with full state constraints and unknown control coefficients,” Automatica, 93, 444-453, Jul. 2018. (SCI). (2区)
[18] Da-Peng Li and Dong-Juan Li*, “Adaptive neural tracking control for an uncertain state constrained robotic manipulator with unknown time-varying delays,” IEEE Transactions on Systems, Man, and Cybernetics: Systems, vol. 48, no. 12, pp. 2219-2228, Dec. 2018. (SCI). (1区)
[19] Hong Xin, Li Yunhe, Gao Chang, Zhao Yonghua, Tang Ke﹡. Adsorption Removing Various Basic Nitrogen Compounds from Model Diesel over Allochroic Silica Gel. Adsorption Science and Technology, 2018, 36(9-10): 1595-1611. (SCI)
[20] Hong Xin, Tang Ke﹡. Modification and Characterization of NaY Molecular Sieve by Cr3+ and its Adsorptive Denitrogenation from Model Fuel, Petroleum Science and Technology. 2018, 36(24): 2143-2150. (SCI)
[21] 洪新, 李云赫, 高畅, 范博, 张丹, 庞宇莹, 唐克. 不同硅铝比ZSM-5的合成及其吸附脱除模拟燃料中的苯胺或吡啶,燃料化学学报,2018, 46(10): 1184-1192. (EI).
[22] 洪新, 李云赫, 袁加成, 赵永华, 唐 克﹡. 变色硅胶吸附脱除模拟柴油中各种碱性氮化物, 燃料化学学报, 2018, 46(3): 298-304. (EI)..
[23] 洪新, 李云赫, 赵永华, 唐 克﹡. 介孔材料Co-MCM-41的合成及其吸附脱除各种碱性氮化物, 燃料化学学报, 2018, 46(2): 243-250. (EI).
[24] Da-Peng Li, Dong-Juan Li*, Yan-Jun Liu*, Shaocheng Tong, and C. L. Philip Chen, “Approximation-based adaptive neural tracking control of nonlinear MIMO unknown time-varying delay systems with full state constraints”, IEEE Transactions on Cybernetics, vol. 47, no. 10, pp. 3100-3109, Oct. 2017. (SCI). (1区)
[25] Da-Peng Li and Dong-Juan Li*, “Adaptive neural tracking control for nonlinear time-delay systems with full state constraints,” IEEE Transactions on Systems, Man, and Cybernetics: Systems, vol. 47, no. 7, pp. 1590-1601, Jul. 2017. (SCI). (1区)
[26] Hong Xin, Tang Ke﹡. Preparation and adsorption denitrogenation from model fuel or diesel oil of heteroatoms mesoporous molecular sieve Co-MCM-41. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects. 2016, 38(17): 2560-2567. (SCI)
[27] Tang Ke, Hong Xin﹡. Preparation and characterization of Co-MCM-41 and its adsorption removing basic nitrogen compounds from FCC diesel oil. Energy and Fuels. 2016, 30(6): 4619-4624. (SCI) (2区)
[28] 洪新, 唐克﹡. Cr3+改性NaY分子筛的吸附脱氮性能, 燃料化学学报, 2016, 44(2): 251-256. (EI).
[29] 洪新, 唐克﹡, 丁世洪. 杂原子介孔Co-MCM-41分子筛的制备及其柴油深度吸附脱氮性能. 燃料化学学报, 2016, 44(1): 99-105. (EI).
[30] Hong Xin, Tang Ke﹡. Secondary synthesis of microporous heteroatoms Y zeolite and their hydrodesulfurization properties for model fuel. Key Engineering Materials. 2015, 645-646: 1163-1169. (EI)
[31] Hong Xin, Tang Ke﹡. Adsorptive Denitrogenation of Diesel Oil using a Modified NaY Molecular Sieve. Petroleum Science and Technology. 2015, 33(15-16): 1471-1478. (SCI)
[32] 洪新, 唐克﹡. 杂原子介孔Co-MCM-41分子筛的制备及其吸附脱氮性能. 燃料化学学报. 2015, 43(6): 720-727. (EI).
[33] 洪新, 唐克﹡. 杂原子介孔Ce-MCM-41分子筛的制备及其吸附甲硫醚性能. 燃料化学学报, 2015, 43(4): 456-461. (EI).
[34] 洪新, 唐克﹡. NaY分子筛的改性及吸附脱氮性能,燃料化学学报, 2015, 43(2): 214-220. (EI).
[35] Dong-Juan Li*, Jing Li, and Shu Li, “Adaptive control of nonlinear systems with full state constraints using integral barrier Lyapunov functionals,” Neurocomputing, vol. 186, pp. 90-96, Apr. 2016. (SCI). (2区)
[36] Dong-Juan Li*, “Adaptive neural stabilization control for unified chaotic systems with full state constraints,” Journal of Vibration and Control, vol. 22, no. 1, pp. 121-128, 2016. (SCI).
[37] D. J. Li and Y. J. Liu, Adaptive Neural Control with Minimal Learning Parameters for Continuous Stirred Tank Reactor Systems, ICIC Express Letters Part B: Applications, vol. 6, no. 3, pp. 865-870, 2015. (EI)
[38] D. J. Li and D. P. Li, Adaptive Controller Design-Based Neural Networks for Output Constraint Continuous Stirred Tank Reactor, Neurocomputing, Vol. 153, pp. 159-163, 2015. April. (SCI).
[39] D. J. Li, Adaptive neural network control for a two continuously stirred tank reactor with output constraints Neurocomputing, Vol. 167, pp. 451-458, 2015. (SCI).
[40] D. J. Li, Adaptive neural network control for unified chaotic systems with dead-zone input, Journal of Vibration and Control, vol. 21, no. 12, pp. 2446-2451, 2015. (SCI).
[41] P Wang,H Liu,M Liu,R Li,J Ma. Immobilized Pd complexes over HMMS as catalysts for Heck cross-coupling and selective hydrogenation reaction. New Journal of Chemistry, Vol. 38, No. 3, pp. 1138-1144, 2014. (SCI).
[42] TANG Ke, HONG Xin. Application of Bacterium HY9 Strain for Diesel Oil Denitrogenation. Petroleum Science and Technology, 2014, 32(20): 2466-2472. (SCI)
[43] TANG Ke, HONG Xin. A Characterization of Bacterium for FCC Diesel Oil Desulfurization. Petroleum Science and Technology, 2014, 32(13): 1545-1552. (SCI)
[44] D. J. Li, Neural network control for a class of continuous stirred tank reactor process with dead-zone input, Neurocomputing, Vol. 131, pp. 453-459, 5 May 2014. (SCI).
[45] D. J. Li, Li Tang, Adaptive Control for a Class of Chemical Reactor Systems in Discrete-Time Form, Neural Computing & Applications, vol. 24, no. 6, pp. 1807-1814, 2014. (SCI).
[46] D. J. Li, Adaptive Neural Network Control for a Class of Continuous Stirred Tank Reactor Systems, Science China Information Sciences, vol. 57, no. 10, pp. 1-8, 2014. (SCI).
[47] D. J. Li, L. Tang, Y. J. Liu, Adaptive intelligence learning for nonlinear chaotic systems, Nonlinear Dynamics, Vol. 73, No. 4, pp. 2103-2109, 2013. (SCI).
[48] D. J. Li, J. Zhang, Y. Cui, L. Liu, Intelligent Control of Nonlinear Systems with Application to Chemical Reactor Recycle, Neural Computing & Applications. Vol. 23, no. 5, 1495–1502, 2013. (SCI).
[49] Wang,P.,Zhang,F.,Long,Y.,Xie,M.,R.,J. Entangled Pd complexes over Fe3O4@SiO2 as supported catalysts for hydrogenation and Suzuki reactions. Catalysis Science & Technology, Vol. 3, No. 6, pp. 1618-1624, 2013. (SCI).
[50] 唐克, 洪新, 宋丽娟, 孙兆林. 二次合成Y型杂原子分子筛的吸附脱硫研究. 燃料化学学报, 2012, 40(4): 507-512. (EI)
[51] D. J. Li, Adaptive output feedback control of uncertain nonlinear chaotic systems based on dynamic surface control technique, Nonlinear Dynamics, Vol. 68, No. 1-2, pp. 235-243, April, 2012. (SCI).
[52] TANG Ke, HONG Xin, ZHAO Yonghua, WANG Yingguang. Adsorption Desulfurization on a Nano-Crystalline NaY Zeolite Sysnthesized by Using Carbon Nanotube Templated Growth. Petroleum Science and Technology, 2011, 29(8):779-787. (SCI)
[53] Y. Zheng, P. Li, N. R. Zhao and Z. H. Hou, Kinetics of molecular transitions with dynamic disorder in single-moleculepulling experiments. J. Chem. Phys. 138, 204102 (2013). (SCI)
[54] Y. Zheng, Y. K. Bian, N. R. Zhao, and Z. H. Hou, Stretching of single poly ubiquitin molecules revisited: Dynamic disorder in the nonexponential unfolding kinetics. J. Chem. Phys, 140, 125102 (2014). (SCI)
[55] Y. Zheng et al,. Non-polytropic effect on shock-induced phase transitions in a hard-sphere system. Physics Letters A, 374, 3315(2010). (SCI)